An audio system including an audio-enhancing station including at least one speaker and an audio-enhancing station docking connector, a music phone configured to play audio files and function as a wireless communication device separate from the audio-enhancing station, the music phone including at least one speaker to emit sound from the playing of the audio files, and a music phone docking connector that connects with the audio-enhancing station docking connector to dock the music phone with the audio-enhancing station, wherein the music phone and the audio-enhancing station together form an audio system where the at least one speaker of the music phone and the at least one speaker of the audio-enhancing station emit sound from the playing of the audio files on the music phone.
|
1. An audio system, comprising:
an audio-enhancing station including at least one speaker and an audio-enhancing station docking connector,
a music phone configured to play audio files and function as a wireless communication device separate from the audio-enhancing station, the music phone including a music phone docking connector that connects with the audio-enhancing station docking connector to dock the music phone with the audio-enhancing station, a clam-shell configuration with a first housing portion, a second housing portion, and a hinge pivotally connecting the first housing portion and the second housing portion together, a front and a rear, the front of the first housing portion including a display, the front of the second housing portion including input keys to operate the music phone, the rear of the first housing portion including a first external speaker, the rear of the second housing portion including a second external speaker, the first and second external speakers emitting sound resulting from the playing of the audio files,
wherein the music phone and the audio-enhancing station together form an audio system where the first and second external speakers of the music phone and the at least one speaker of the audio-enhancing station emit sound from the playing of the audio files on the music phone, and
the audio-enhancing station docking connector is a vertically extending combination audio and power plug that transmits electrical signals representative of the audio files played on the music phone to the at least one speaker of the audio-enhancing station, and transmits power to the music phone to recharge at least one power source of the music phone,
the hinge includes the music phone docking connector,
the music phone docking connector hinge matingly receives the vertically extending combination audio and power plug so as to support the music phone in an open position and form an audio system with the music phone docked to the audio-enhancing station.
9. A method of playing audio files on an audio system including an audio-enhancing station having at least one speaker and an audio-enhancing station docking connector, and a music phone configured to play audio files and function as a wireless communication device separate from the audio-enhancing station, the music phone including a music phone docking connector that connects with the audio-enhancing station docking connector to dock the music phone with the audio-enhancing station, a clam-shell configuration with a first housing portion, a second housing portion, and a hinge pivotally connecting the first housing portion and the second housing portion together, a front and a rear, the front of the first housing portion including a display, the front of the second housing portion including input keys to operate the music phone, the rear of the first housing portion including a first external speaker, the rear of the second housing portion including a second external speaker, the first and second external speakers emitting sound resulting from the playing of the audio files, the audio-enhancing station docking connector is a vertically extending combination audio and power plug that transmits electrical signals representative of the audio files played on the music phone to the at least one speaker of the audio-enhancing station, and transmits power to the music phone to recharge at least one power source of the music phone, the hinge includes the music phone docking connector, the music phone docking connector hinge matingly receives the vertically extending combination audio and power plug so as to support the music phone in an open position and form an audio system with the music phone docked to the audio-enhancing station, comprising:
receiving a docking connection between the music phone and the audio-enhancing station via the music phone docking connector and the audio-enhancing station docking connector whereby the music phone docking connector hinge matingly receives the vertically extending combination audio and power plug so as to support the music phone in an open position;
receiving input associated with the playing of audio files on the music phone;
playing audio files on the music phone so that signals corresponding to the audio files are generated;
sending the generated signals to the first and second external speakers of the music phone and the at least one speaker of the audio-enhancing station;
emitting sound corresponding to the signals from the first and second external speakers of the music phone and the at least one speaker of the audio-enhancing station.
2. The audio system of
3. The audio system of
4. The audio system of
5. The audio system of
6. The audio system of
7. The audio system of
8. The audio system of
10. The method of
11. The method of
12. The method of
13. The method of
|
The present invention relates to handheld wireless communication devices that play music files and associated devices.
Headsets (e.g., headphones) and separate speakers have been used in the past to listen to music files played on a handheld wireless communication device. A problem with headsets is that they are designed for personal use, so they are not practical for multiple people to use at once to enjoy music played by the handheld wireless communication device. A problem with the separate speakers that have been used in the past is that they have to be purchased separately and have to be readily available for use. Unfortunately, these speakers are not readily transportable (e.g., can't be carried in one's pant pockets, don't fit easily into one's purse).
These problems and others are addressed by the music phone, audio-enhancing station, and system of the present invention.
An aspect of the present invention involves a music phone and audio-enhancing station. The music phone includes a clam-shell configuration with a first housing portion and a second housing portion pivotally connected to each other at a hinge. The first housing portion includes a front with a display therein and a rear with a first external speaker therein. The second housing portion includes a front with input keys therein and a rear with a second external speaker therein. Adjacent the hinge is a combination audio and power jack. The audio enhancing station includes a substantially conical station housing. The station housing decreases in diameter progressing upward. The station housing terminates in an upper portion in a combination audio and power plug. The station housing increases in diameter progressing downward. The station housing terminates in a lower portion in a circular base. The audio-enhancing station includes at least one speaker such as, but not limited to, a sub-woofer. The station base rests upon a plurality of spacers that vertically space the bottom of the base a predetermined distance from a supporting surface (e.g., table top, desk top, shelf top, etc.). A top of the base includes at least one input key for controlling the playing of music files on the music phone.
In use, the music phone is pivoted open along the hinge and docked onto the audio-enhancing station. To dock the music phone onto the audio-enhancing station, the music phone is positioned so that the combination audio and power jack is positioned over the combination audio and power plug of the audio-enhancing station and pressed down so that the jack receives the plug. With the music phone docked and in the pivoted open position, the external speakers of the music phone are horizontally aligned and lie in the same vertical plane. The music phone is rotated about the plug so that the external speakers face in the desired direction for audio listening. The music phone and audio-enhancing station are controlled through the at least one input key on the base of the audio-enhancing station. Alternatively, or additionally, the music phone and/or audio-enhancing station are controlled via a remote control. When music files are played on the music phone, sound is emitted out of the external speakers of the music phone and out of the subwoofer of the audio-enhancing station. The sound from the subwoofer travels out of the bottom of the audio-enhancing station through the vertical space between the bottom of the base and the supporting surface. The music phone is simultaneously charged by the audio-enhancing station while docked.
Another aspect of the invention involves an audio system including an audio-enhancing station including at least one speaker and an audio-enhancing station docking connector, and a music phone configured to play audio files and function as a wireless communication device separate from the audio-enhancing station, the music phone including at least one speaker to emit sound from the playing of the audio files, and a music phone docking connector that connects with the audio-enhancing station docking connector to dock the music phone with the audio-enhancing station, wherein the music phone and the audio-enhancing station together form an audio system where the at least one speaker of the music phone and the at least one speaker of the audio-enhancing station emit sound from the playing of the audio files on the music phone.
A further aspect of the invention involves a method of playing audio files on an audio system including an audio-enhancing station having at least one speaker and an audio-enhancing station docking connector, and a music phone configured to play audio files and function as a wireless communication device separate from the audio-enhancing station, the music phone including at least one speaker to emit sound from the playing of the audio files, and a music phone docking connector that connects with the audio-enhancing station docking connector to dock the music phone with the audio-enhancing station. The method includes receiving a docking connection between the music phone and the audio-enhancing station via the music phone docking connector and the audio-enhancing station docking connector; receiving input associated with the playing of audio files on the music phone; playing audio files on the music phone so that signals corresponding to the audio files are generated; sending the generated signals to the at least one speaker of the music phone and the at least one speaker of the audio-enhancing station; and emitting sound corresponding to the signals from the at least one speaker of the music phone and the at least one speaker of the audio-enhancing station.
Other features and advantages of the present invention will become more readily apparent to those of ordinary skill in the art after reviewing the following detailed description and accompanying drawings.
The details of the present invention, both as to its structure and operation, may be gleaned in part by study of the accompanying drawings, in which like reference numerals refer to like parts, in which:
Certain embodiments as disclosed herein provide for embodiments of music phone 100, audio-enhancing station 110, and audio system 120 including music phone 100 and audio-enhancing station 110, and a method of using the same.
After reading this description it will become apparent to one skilled in the art how to implement the invention in various alternative embodiments and alternative applications. However, although various embodiments of the present invention will be described herein, it is understood that these embodiments are presented by way of example only, and not limitation. As such, this detailed description of various alternative embodiments should not be construed to limit the scope or breadth of the present invention as set forth in the appended claims.
With reference to
With reference to
With reference to
To play music files with the audio system 120, the audio system 120 is assembled to play music by the music phone 100 being pivoted open along hinge 150 and receiving a docking connection with audio-enhancing station 110. A docking connection occurs by the music phone 100 being positioned so that combination audio and power jack 240 is over combination audio and power plug 270 of audio-enhancing station 110 and being pressed down so that jack 240 receives plug 270. With music phone 100 docked and in the pivoted-open position, external speakers 190, 230 of music phone 100 become horizontally aligned by the user so that external speakers 190, 230 lie in the same vertical plane. Music phone 100 becomes rotated clockwise or counterclockwise about plug 240 so that external speakers 190, 230 face in the desired direction for listening to the audio system 120 by a user.
In an embodiment of the invention, the playing of music files is controlled by the music phone 100 being rotated clockwise or counterclockwise about plug 240 so that input keys 210 of music phone 100 face the user. Input keys 210 receive input from the user for control of music file play on music phone 100.
Alternatively, in the embodiment of system 120 shown in
In a further embodiment of system 120, system 120 additionally includes a wireless remote control for music phone 100 and/or audio-enhancing station 110 wirelessly being controlled for music file play on music phone 100.
The audio-enhancing station 110 includes its own power source (e.g., at least one battery, at least one rechargeable battery) and/or receives power via a power cord and plug (not shown) plugged into an AC power source.
When music files stored in memory are played using appropriate software on music phone 100, appropriate signals are sent to and driven by external speakers 190, 230 and sound is emitted out of external speakers 190, 230. Signals are also sent to and driven by audio-enhancing station 110 via audio and power jack 240 and combination audio and power plug 27. The subwoofer in audio-enhancing station 110 receives the signals from the music phone 100 and emits sound that travels out of the bottom of audio-enhancing station 110, through the vertical space between bottom 310 of base 290 and the supporting surface (e.g., table top).
Audio files played by the music phone include low frequency signals and high frequency signals. In another embodiment, when music phone 100 is docked with audio-enhancing station 110, high frequency signals are sent to and driven by speakers 190, 230 of music phone 100 and low frequency signals are sent to and driven by subwoofer of audio-enhancing station 110. When music phone 100 is not docked with audio-enhancing station 110, high frequency signals and low frequency signals are sent to and driven by speakers 190, 230 of music phone 100. Music phone 100 and/or audio-enhancing station 110 includes crossover (or other similar (e.g., signal splitting or filtering)) functionality and circuitry to separate out the signals. In a further implementation, music phone 100 and/or audio-enhancing station 110 are configured to allow toggling of the selection of these features. In a still further implementation, music phone 100 and/or audio-enhancing station 110 are configured to allow the user to specify the crossover frequency. In another implementation, music phone 100 and/or audio-enhancing station 110 are configured to automatically select crossover frequency based on the station docked to (e.g., based on woofer speaker size).
At least one power source (e.g., at least one rechargeable battery) of music phone 100 is charged by audio-enhancing station 110 while music phone 100 is docked with audio-enhancing station 110. Power is transmitted from the power source(s) of the audio-enhancing station 110 and received by the music phone 100 via audio and power jack 240 and combination audio and power plug 27 for recharging at least one power source of the music phone 100.
Thus, with the music phone 100 docked to audio-enhancing station 110, audio system 120 is formed. The audio-enhancing station 110 enhances the audio output of music phone 100 and simultaneously charges at least one power source of the music phone 100.
The above description of the disclosed embodiments is provided to enable any person skilled in the art to make or use the invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the generic principles described herein can be applied to other embodiments without departing from the spirit or scope of the invention. Thus, it is to be understood that the description and drawings presented herein represent a presently preferred embodiment of the invention and are therefore representative of the subject matter which is broadly contemplated by the present invention. It is further understood that the scope of the present invention fully encompasses other embodiments that may become obvious to those skilled in the art and that the scope of the present invention is accordingly limited by nothing other than the appended claims.
Tyneski, Frank, Paik, Russell, Russell, Eva, Philip, Leung, Travis, Hosler, Evan, Gant
Patent | Priority | Assignee | Title |
10067538, | Mar 15 2013 | Intel Corporation | Connector assembly for an electronic device |
10073495, | Mar 15 2013 | Intel Corporation | Connector assembly for an electronic device |
10152093, | Mar 15 2013 | Intel Corporation | Connector assembly for an electronic device |
10345865, | Mar 15 2013 | Intel Corporation | Connector assembly for an electronic device |
10571976, | Mar 15 2013 | Intel Corporation | Connector assembly for an electronic device |
11537172, | Mar 15 2013 | Intel Corporation | Connector assembly for an electronic device |
9344543, | Jul 15 2014 | Wistron Corporation | Utilizing telecoil compatibility on a mobile device for improving frequency range of multimedia playback |
D772733, | Apr 30 2015 | Abbvie Biotechnology Ltd.; AbbVie Biotechnology Ltd | Timer |
D773941, | Apr 08 2015 | SDI TECHNOLOGIES, INC. | Alarm clock |
D874456, | Mar 15 2013 | Intel Corporation | Electronic device |
Patent | Priority | Assignee | Title |
6078825, | Feb 20 1998 | ADVANCED MOBILE SOLUTIONS, INC | Modular wireless headset system for hands free talking |
20020119800, | |||
20040071285, | |||
20040224638, | |||
20040235518, | |||
20050020257, | |||
20050031117, |
Executed on | Assignor | Assignee | Conveyance | Frame | Reel | Doc |
Aug 30 2006 | RUSSELL, EVA | Kyocera Wireless Corp | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 018269 | /0575 | |
Sep 01 2006 | PAIK, RUSSELL | Kyocera Wireless Corp | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 018269 | /0575 | |
Sep 08 2006 | TYNESKI, FRANK | Kyocera Wireless Corp | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 018269 | /0575 | |
Sep 12 2006 | LEUNG, PHILIP | Kyocera Wireless Corp | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 018269 | /0575 | |
Sep 12 2006 | HOSLER, TRAVIS | Kyocera Wireless Corp | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 018269 | /0575 | |
Sep 12 2006 | GANT, EVAN | Kyocera Wireless Corp | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 018269 | /0575 | |
Sep 13 2006 | Kyocera Corporation | (assignment on the face of the patent) | / | |||
Mar 26 2010 | Kyocera Wireless Corp | Kyocera Corporation | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 024170 | /0005 |
Date | Maintenance Fee Events |
Jul 30 2014 | M1551: Payment of Maintenance Fee, 4th Year, Large Entity. |
Sep 24 2018 | REM: Maintenance Fee Reminder Mailed. |
Mar 11 2019 | EXP: Patent Expired for Failure to Pay Maintenance Fees. |
Date | Maintenance Schedule |
Feb 01 2014 | 4 years fee payment window open |
Aug 01 2014 | 6 months grace period start (w surcharge) |
Feb 01 2015 | patent expiry (for year 4) |
Feb 01 2017 | 2 years to revive unintentionally abandoned end. (for year 4) |
Feb 01 2018 | 8 years fee payment window open |
Aug 01 2018 | 6 months grace period start (w surcharge) |
Feb 01 2019 | patent expiry (for year 8) |
Feb 01 2021 | 2 years to revive unintentionally abandoned end. (for year 8) |
Feb 01 2022 | 12 years fee payment window open |
Aug 01 2022 | 6 months grace period start (w surcharge) |
Feb 01 2023 | patent expiry (for year 12) |
Feb 01 2025 | 2 years to revive unintentionally abandoned end. (for year 12) |